Cargando…

Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers

Carbon-based particles, such as graphite and graphene, have been widely used as a filler in magnetorheological elastomer (MRE) fabrication in order to obtain electrical properties of the material. However, these kinds of fillers normally require a very high concentration of particles to enhance the...

Descripción completa

Detalles Bibliográficos
Autores principales: Abdul Aziz, Siti Aishah, Mazlan, Saiful Amri, Ubaidillah, U, Shabdin, Muhammad Kashfi, Yunus, Nurul Azhani, Nordin, Nur Azmah, Choi, Seung-Bok, Rosnan, Rizuan Mohd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6862635/
https://www.ncbi.nlm.nih.gov/pubmed/31661837
http://dx.doi.org/10.3390/ma12213531
_version_ 1783471599898329088
author Abdul Aziz, Siti Aishah
Mazlan, Saiful Amri
Ubaidillah, U
Shabdin, Muhammad Kashfi
Yunus, Nurul Azhani
Nordin, Nur Azmah
Choi, Seung-Bok
Rosnan, Rizuan Mohd
author_facet Abdul Aziz, Siti Aishah
Mazlan, Saiful Amri
Ubaidillah, U
Shabdin, Muhammad Kashfi
Yunus, Nurul Azhani
Nordin, Nur Azmah
Choi, Seung-Bok
Rosnan, Rizuan Mohd
author_sort Abdul Aziz, Siti Aishah
collection PubMed
description Carbon-based particles, such as graphite and graphene, have been widely used as a filler in magnetorheological elastomer (MRE) fabrication in order to obtain electrical properties of the material. However, these kinds of fillers normally require a very high concentration of particles to enhance the conductivity property. Therefore, in this study, the nanosized Ni-Mg cobalt ferrite is introduced as a filler to soften MRE and, at the same time, improve magnetic, rheological, and conductivity properties. Three types of MRE samples without and with different compositions of Mg, namely Co(0.5)Ni(0.2)Mg(0.3)Fe(2)O(4) (A1) and Co(0.5)Ni(0.1)Mg(0.4)Fe(2)O(4) (A2), are fabricated. The characterization related to the micrograph, magnetic, and rheological properties of the MRE samples are analyzed using scanning electron microscopy (SEM), vibrating sample magnetometer (VSM), and the rheometer. Meanwhile, the effect of the nanosized Ni-Mg cobalt ferrites on the electrical resistance property is investigated and compared with the different Mg compositions. It is shown that the storage modulus of the MRE sample with the nanosized Ni-Mg cobalt ferrites is 43% higher than that of the MRE sample without the nanomaterials. In addition, it is demonstrated that MREs with the nanosized Ni-Mg cobalt ferrites exhibit relatively low electrical resistance at the on-state as compared to the off-state condition, because MRE with a higher Mg composition shows lower electrical resistance when higher current flow occurs through the materials. This salient property of the proposed MRE can be effectively and potentially used as an actuator to control the viscoelastic property of the magnetic field or sensors to measure the strain of the flexible structures by the electrical resistance signal.
format Online
Article
Text
id pubmed-6862635
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68626352019-12-05 Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers Abdul Aziz, Siti Aishah Mazlan, Saiful Amri Ubaidillah, U Shabdin, Muhammad Kashfi Yunus, Nurul Azhani Nordin, Nur Azmah Choi, Seung-Bok Rosnan, Rizuan Mohd Materials (Basel) Article Carbon-based particles, such as graphite and graphene, have been widely used as a filler in magnetorheological elastomer (MRE) fabrication in order to obtain electrical properties of the material. However, these kinds of fillers normally require a very high concentration of particles to enhance the conductivity property. Therefore, in this study, the nanosized Ni-Mg cobalt ferrite is introduced as a filler to soften MRE and, at the same time, improve magnetic, rheological, and conductivity properties. Three types of MRE samples without and with different compositions of Mg, namely Co(0.5)Ni(0.2)Mg(0.3)Fe(2)O(4) (A1) and Co(0.5)Ni(0.1)Mg(0.4)Fe(2)O(4) (A2), are fabricated. The characterization related to the micrograph, magnetic, and rheological properties of the MRE samples are analyzed using scanning electron microscopy (SEM), vibrating sample magnetometer (VSM), and the rheometer. Meanwhile, the effect of the nanosized Ni-Mg cobalt ferrites on the electrical resistance property is investigated and compared with the different Mg compositions. It is shown that the storage modulus of the MRE sample with the nanosized Ni-Mg cobalt ferrites is 43% higher than that of the MRE sample without the nanomaterials. In addition, it is demonstrated that MREs with the nanosized Ni-Mg cobalt ferrites exhibit relatively low electrical resistance at the on-state as compared to the off-state condition, because MRE with a higher Mg composition shows lower electrical resistance when higher current flow occurs through the materials. This salient property of the proposed MRE can be effectively and potentially used as an actuator to control the viscoelastic property of the magnetic field or sensors to measure the strain of the flexible structures by the electrical resistance signal. MDPI 2019-10-28 /pmc/articles/PMC6862635/ /pubmed/31661837 http://dx.doi.org/10.3390/ma12213531 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Abdul Aziz, Siti Aishah
Mazlan, Saiful Amri
Ubaidillah, U
Shabdin, Muhammad Kashfi
Yunus, Nurul Azhani
Nordin, Nur Azmah
Choi, Seung-Bok
Rosnan, Rizuan Mohd
Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title_full Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title_fullStr Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title_full_unstemmed Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title_short Enhancement of Viscoelastic and Electrical Properties of Magnetorheological Elastomers with Nanosized Ni-Mg Cobalt-Ferrites as Fillers
title_sort enhancement of viscoelastic and electrical properties of magnetorheological elastomers with nanosized ni-mg cobalt-ferrites as fillers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6862635/
https://www.ncbi.nlm.nih.gov/pubmed/31661837
http://dx.doi.org/10.3390/ma12213531
work_keys_str_mv AT abdulazizsitiaishah enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT mazlansaifulamri enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT ubaidillahu enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT shabdinmuhammadkashfi enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT yunusnurulazhani enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT nordinnurazmah enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT choiseungbok enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers
AT rosnanrizuanmohd enhancementofviscoelasticandelectricalpropertiesofmagnetorheologicalelastomerswithnanosizednimgcobaltferritesasfillers